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Showing posts with label Fixed Power Supply. Show all posts
Showing posts with label Fixed Power Supply. Show all posts

Wednesday, February 4, 2009

High Current Regulated Supply By LM317

The high current regulator below uses an additional winding or a separate transformer to supply power for the LM317 regulator so that the pass transistors can operate closer to saturation and improve efficiency. For good efficiency the voltage at the collectors of the two parallel 2N3055 pass transistors should be close to the output voltage. The LM317 requires a couple extra volts on the input side, plus the emitter/base drop of the 3055s, plus whatever is lost across the (0.1 ohm) equalizing resistors (1volt at 10 amps), so a separate transformer and rectifier/filter circuit is used that is a few volts higher than the output voltage.

The LM317 will provide over 1 amp of current to drive the bases of the pass transistors and assuming a gain of 10 the combination should deliver 15 amps or more. The LM317 always operates with a voltage difference of 1.2 between the output terminal and adjustment terminal and requires a minimum load of 10mA, so a 75 ohm resistor was chosen which will draw (1.2/75 = 16mA). This same current flows through the emitter resistor of the 2N3904 which produces about a 1 volt drop across the 62 ohm resistor and 1.7 volts at the base. The output voltage is set with the voltage divider (1K/560) so that 1.7 volts is applied to the 3904 base when the output is 5 volts. For 13 volt operation, the 1K resistor could be adjusted to around 3.6K. The regulator has no output short circuit protection so the output probably should be fused.

Wednesday, January 2, 2008

Fixed Voltage Power Supply

The fixed voltage power supply is useful in applications where an adjustable output is not required. This supply is simple, but very flexible as the voltage it outputs is Dependant only on the regulator and transformer you choose. The maximum output current is 1.5A.

Schematic

Parts

Part Total Qty. Description Substitutions

C1 1 2200uF 35V Electrolytic Capacitor
C2, C4 2 0.1uF Ceramic Disc Capacitor
C3 1 10uF 35V Electrolytic Capacitor
D1, D2 2 1N4007 Silicon Diode
BR1 1 2A 30V Bridge Rectifier
U1 1 Regulator (See Notes)
T1 1 Transformer (See Notes)
S1 1 SPST 2 Amp Switch
F1 1 2A 250V Fuse and Holder
MISC 1 Heatsink For U1, Line Cord, Case, Wire

Notes
1. Since this project operates from 120 (or 220, or 240, etc.) volts AC, it MUST be built inside a case.
2. U1 will reauire a heatsink.
3. You will need to choose T1 and U1 to match the voltage you want. Use the table below as a reference.